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Effects of heat treatment on shape-setting and non-linearmechanical properties of Nitinol Stent

机译:热处理对镍钛诺支架的定型和非线性力学性能的影响

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NiTi shape memory alloy is a temperature sensitive material with non-linear mechanical properties and good biocompatibility, which can be used for medical devices such as stent, catheter guide wire and orthodontic wire. The majority of nitinol stents are of the self-expanding type basing on the superelasticity. Nitinol stents are shape set into the open condition and compressed and inserted into the delivery catheter. Additional the shape-setting treatment can be used as a tool to accurately tune the transformation temperatures and mechanical properties. In this study, different heat treatments have been performed on the Ti-50.7at%Ni alloy wires. And results of shape-setting, austenite transformation finish temperature and non-linear mechanical property of NiTi shape memory alloy at body temperature have been investigated. The experimental results show that the proper shape-setting temperature should be chosen between 450-550 °C. And the shape-setting results were stabilization when the NiTi wires were constrain-treated at 500 and 550 °C and ageing time longer than 10 minutes. The austenite finish temperatures increased with ageing time and increased first and then decreased with ageing temperature. The peak values were obtained at 400 °C. When the heat treatments was performed at the same temperature, both the upper plateau stresses and lower plateau stresses decreased with the ageing time. Most of treated nitinol wires owned good recovery ability at body temperature and the permanent sets were less than 0.05% when short time ageing treatment was performed at 500 °C.
机译:NiTi形状记忆合金是一种具有非线性机械性能和良好生物相容性的温度敏感材料,可用于医疗器械,如支架,导管导丝和正畸丝。镍钛诺支架的大多数是基于超弹性的自膨胀型。镍钛诺支架的形状设定为打开状态,然后压缩并插入输送导管中。附加的定型处理可以用作精确调整相变温度和机械性能的工具。在这项研究中,已对Ti-50.7at%Ni合金丝进行了不同的热处理。并研究了NiTi形状记忆合金在体温下的定型,奥氏体转变完成温度和非线性力学性能的结果。实验结果表明,合适的定型温度应在450-550之间选择。 ℃。当在500和550°C的条件下对NiTi线材进行约束处理并且时效时间超过10分钟时,定型结果是稳定的。奥氏体终点温度随着时效时间的增加而升高,然后随着时效温度的升高而先降低,然后降低。在400℃获得峰值。当在相同温度下进行热处理时,上平台应力和下平台应力均随着时效时间而降低。大多数经过处理的镍钛合金线材在体温下均具有良好的恢复能力,永久变形较少 当在500°C下进行短时效处理时,该值小于0.05%。

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